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Experimental and Numerical Analysis of the Conceptual Next Generation Ecology Tire (First Report)

机译:概念下一代生态轮胎的实验和数值分析(第一报告)

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With the rapidly increasing awareness on environmental issues, a competition of eco-friendly car development among vehicle manufacturers has become so intense. In fact, decent numbers of modern production vehicles which equipped with low fuel consumption means in various ways have been around in the world today. Since each vehicle manufacturer proposes brand-new vehicle systems one after another, vehicle types become significantly diversified and each one shows different characteristics indeed. On the other hand, these changes in requirements over vehicle performance bring corresponding changes in the development of tires suitable for a variety of the latest eco-vehicles. Recent tire requirements can be basically represented by compatibility between low Rolling Resistance (RR) and other performance while pursuit of RR reduction results in poor force and moment characteristics in general. Therefore, in order for realizing a substantially eco-friendly tire which simultaneously offers appreciable drivability along with decent performance in necessity, investigations of a next generation tire concept in terms of a tire dimension beyond common knowledge has been done. In this study, a size effect in terms of Rolling Resistance Coefficient (RRC), Cornering Power (CP), Stiffness, and Weight has been investigated through numerical simulations from tire deformation mechanism points of view [1][2][5], experimental analysis with actual tires as a verification by indoor measurements [8][9][10], and vehicle tests at proving ground [12][13]. Through the series of research activities, one of the directions of next generation tire sizes is proposed and the future work of this concept is discussed as well.
机译:随着对环境问题的迅速提高意识,车辆制造商之间环保汽车开发的竞争变得如此激烈。事实上,现代生产车辆的数量的数量,配备了低燃料消耗意味着在今天的世界各地一直存在。由于每个车辆制造商陆续提出全新的车辆系统,因此车辆类型变得显着多样化,每个车辆类型都显示出不同的特征。另一方面,这些对车辆性能的要求的变化带来了适合各种最新生态车辆的轮胎的开发变化。最近的轮胎要求基本上通过低滚动阻力(RR)和其他性能之间的相容性表示,而追求RR降低导致差的力和矩特征一般。因此,为了实现基本环保的轮胎,该轮胎同时提供可观的驾驶能力,以及必要性的体现性能,已经完成了超越普遍知识的轮胎维度的下一代轮胎概念的研究。在该研究中,通过轮胎变形机制的数值模拟研究了滚动电阻​​系数(RRC),转弯功率(CP),刚度和重量的尺寸效应[1] [2] [5],用实际轮胎作为室内测量验证的实验分析[8] [9] [10],以及在证明磨实的载体测试[12] [13]。通过一系列研究活动,提出了下一代轮胎尺寸的方向之一,并讨论了这一概念的未来工作。

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